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PubMed · 4116782

Glucagon.

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1972-09-23. Glucagon.. https://pubmed.ncbi.nlm.nih.gov/4116782/

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Chromatographic molecular recognition for catechol-related compounds using thiacalix[4]arene as an effective selector.

Thiacalix[4]arene (5,11,17,23-tetra- tert-butyl-25,26,27,28-tetrahydroxy-2,8,14,20-tetrathiacalix[4]arene) is an amphiphilic molecule comprising four p-tert-butylphenol-like groups ortho-linked by single sulfur atoms. This molecule has a high electron density area owing to the close proximity of the hydroxyl groups and sulfur atoms. We studied the applicability of this interesting compound as a selector for high-performance liquid chromatography (HPLC) thereby presumably exploiting this feature. Firstly, uniformly sized polymer particles were prepared by using a multi-step swelling and polymerization method with ethylene glycol dimethacrylate (EDMA) as a cross-linker. Methacrylic acid (MAA) was introduced onto the surface of the resulting polymer particles through a new modification method. Thiacalix[4]arene was chemically bonded through the MAA group by using 1,4-dibromobutane as a spacer to reduce steric hindrance around the MAA and the polymer particle itself. The performance of the prepared polymer-based thiacalix[4]arene-modified stationary phase was evaluated with HPLC. Specific chromatographic retention behavior was observed for catechol relative to positional isomers of xylene, cresol, and benzene-diol. Catecholamine and catechol showed specific chromatographic retention behavior.

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Microfluorometric detection of catecholamines with multiphoton-excited fluorescence.

We demonstrate sensitive spatially resolved detection of physiological chromophores that emit in the ultraviolet (<330 nm). An atypical laser source (a visible wavelength femtosecond optical parametric oscillator), and an unconventional collection geometry (a lensless detector that detects the forward-emitted fluorescence) enable this detection. We report the excitation spectra of the catecholamines dopamine and norepinephrine, together with near-UV emitters serotonin and tryptophan, in the range of 550-595 nm. We estimate the molecular two-photon action cross section of dopamine, norepinephrine, and serotonin to be 1.2 mGM (1 GM, or Goppert Mayor, is equal to 10(-58) m4 s(-1) photon(-1)), 2 mGM, and 43 mGM, respectively, at 560 nm. The sensitivity achieved by this method holds promise for the microscopic imaging of vesicular catecholamines in live cells.

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Survey of the use of catecholamines by French physicians.

OBJECTIVE: The objective of the study was to perform a descriptive approach of the current use of catecholamines by French physicians. DESIGN: A questionnaire of 12 questions with 4 items established by a group of French intensivists. POPULATION: French physicians from 433 departments working in the following practicing areas: intensive care unit (ICU), emergency department, and pre-hospital setting. MEASUREMENTS: Responding physicians were asked about the catecholamine that they would select in various clinical settings. RESULTS: The response rate was 82%. Of the responding physicians, 277 (78%) worked in an ICU, 28 (8%) in an emergency department, and 21 (6%) in a pre-hospital setting. Dobutamine was chosen for patients with cardiogenic shock by 90% of the respondents. Norepinephrine was the first choice agent as vasopressor in patients with septic shock in 52% of the cases. Dopamine was selected in a clinical setting requiring an optimization of regional blood flow, as in the concept of high-risk surgical patients. Dopexamine was used as a second or third choice agent to improve regional blood flow and cardiac output. The indications of epinephrine for anaphylactic shock and cardio-circulatory arrest were obvious for more than 90% of responding physicians. CONCLUSION: A lack of standardization appears in the use of catecholamines by French physicians, particularly for improvement of regional circulation and management of high-risk surgical patients. Guidelines that define the place of each catecholamine in these settings are required to improve the quality of prescription.

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